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使用多层可拆卸微针将速效胰岛素转化为热稳定的长效胰岛素。

Converting Short-Acting Insulin into Thermo-Stable Longer-Acting Insulin Using Multi-Layer Detachable Microneedles.

机构信息

Center of Excellence in Materials and Bio-Interfaces, Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

Central Chest Institute of Thailand, Nonthaburi 11000, Thailand.

出版信息

J Pharm Sci. 2024 Sep;113(9):2734-2743. doi: 10.1016/j.xphs.2024.06.006. Epub 2024 Jun 8.

DOI:10.1016/j.xphs.2024.06.006
PMID:38857645
Abstract

The detachable dissolving microneedles (DDMNs) feature an array of needles capable of being separated from the base sheet during administration. Here they were fabricated to address delivery efficiency and storage stability of insulin. The constructed insulin-DDMN is multi-layered, with 1) a hard tip cover layer; 2) a layer of regular short-acting insulin (RI) mixed with hyaluronic acid (HA) and sorbitol (Sor) which occupies the taper tip region of the needles; 3) a barrier layer situated above the RI layer; and 4) a fast-dissolving layer connecting the barrier layer to the base sheet. RI entrapped in DDMNs exhibited enhanced thermal stability; it could be stored at 40 °C for 35 days without losing significant biological activity. Differential scanning calorimetric analysis revealed that the HA-Sor matrix could improve the denaturation temperature of the RI from lower than room temperature to 186 °C. Tests in ex vivo porcine skin demonstrated RI delivery efficiency of 91±1.59 %. Experiments with diabetic rats revealed sustained release of RI, i.e., when compared to subcutaneous injection with the same RI dose, RI-DDMNs produced slower absorption of insulin into blood circulation, delayed onset of hypoglycemic effect, longer serum insulin half-life, and longer hypoglycemic duration.

摘要

可分离溶解微针 (DDMNs) 的特点是有一排针,在给药过程中能够从基片上分离。在这里,它们被制造出来是为了解决胰岛素的递送效率和储存稳定性问题。所构建的胰岛素-DDMN 是多层的,包括 1)硬尖端盖层;2)一层由常规速效胰岛素 (RI) 与透明质酸 (HA) 和山梨醇 (Sor) 混合而成,占据针的锥形尖端区域;3)位于 RI 层上方的阻隔层;和 4)将阻隔层连接到基片的快速溶解层。包埋在 DDMNs 中的 RI 表现出增强的热稳定性;它可以在 40°C 下储存 35 天而不会失去显著的生物活性。差示扫描量热法分析表明,HA-Sor 基质可以将 RI 的变性温度从室温以下提高到 186°C。在离体猪皮上的测试表明,RI 的递送效率为 91±1.59%。用糖尿病大鼠进行的实验表明,RI 持续释放,即与皮下注射相同剂量的 RI 相比,RI-DDMNs 使胰岛素向血液循环中的吸收更慢,低血糖作用的开始延迟,血清胰岛素半衰期更长,低血糖持续时间更长。

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